Yashar Kor, Liang Tan, Petr Musilek, Marek Z. Reformat
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引用次数: 0
Abstract
Distribution grids are complex networks containing multiple pieces of equipment. These components are interconnected, and each of them is described by various attributes. A knowledge graph is an interesting data format that represents pieces of information as nodes and relations between the pieces as edges. In this paper, we describe the proposed vocabulary used to build a distribution system knowledge graph. We identify the concepts used in such graphs and a set of relations to represent links between concepts. Both provide a semantically rich representation of a system. Additionally, we offer a few illustrative examples of how a distributed system knowledge graph can be utilized to gain more insight into the operations of the grid. We show a simplified analysis of how outages can influence customers based on their locations and how adding DERs can influence/change it. These demonstrative use cases show that the graph-based representation of a distribution grid allows for integrating information of different types and how such a repository can be efficiently utilized. Based on the experiments with distribution system knowledge graphs presented in this article, we postulate that graph-based representation enables a novel way of storing information about power grids and facilitates interactive methods for their visualization and analysis.
配电网是包含多种设备的复杂网络。这些组件相互连接,每个组件都有不同的属性。知识图谱是一种有趣的数据格式,它将信息片段表示为节点,将片段之间的关系表示为边。本文介绍了用于构建配电系统知识图谱的拟议词汇。我们确定了此类图中使用的概念和一组表示概念间联系的关系。两者都为系统提供了丰富的语义表征。此外,我们还提供了一些示例,说明如何利用分布式系统知识图谱来深入了解网格的运行情况。我们简化分析了停电如何根据客户的位置影响客户,以及添加 DER 如何影响/改变停电。这些示范性用例表明,基于图形的配电网表示法可以整合不同类型的信息,以及如何有效利用这种信息库。基于本文介绍的配电系统知识图谱实验,我们推测基于图谱的表示法能够以一种新颖的方式存储电网信息,并促进可视化和分析的交互式方法。
Future InternetComputer Science-Computer Networks and Communications
CiteScore
7.10
自引率
5.90%
发文量
303
审稿时长
11 weeks
期刊介绍:
Future Internet is a scholarly open access journal which provides an advanced forum for science and research concerned with evolution of Internet technologies and related smart systems for “Net-Living” development. The general reference subject is therefore the evolution towards the future internet ecosystem, which is feeding a continuous, intensive, artificial transformation of the lived environment, for a widespread and significant improvement of well-being in all spheres of human life (private, public, professional). Included topics are: • advanced communications network infrastructures • evolution of internet basic services • internet of things • netted peripheral sensors • industrial internet • centralized and distributed data centers • embedded computing • cloud computing • software defined network functions and network virtualization • cloud-let and fog-computing • big data, open data and analytical tools • cyber-physical systems • network and distributed operating systems • web services • semantic structures and related software tools • artificial and augmented intelligence • augmented reality • system interoperability and flexible service composition • smart mission-critical system architectures • smart terminals and applications • pro-sumer tools for application design and development • cyber security compliance • privacy compliance • reliability compliance • dependability compliance • accountability compliance • trust compliance • technical quality of basic services.